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将“聚集诱导发光”活性共轭聚合物易位至介孔硅空心纳米球中:合成、表征、光物理研究及在生物成像中的应用。

Facile Incorporation of "Aggregation-Induced Emission"-Active Conjugated Polymer into Mesoporous Silica Hollow Nanospheres: Synthesis, Characterization, Photophysical Studies, and Application in Bioimaging.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 28;11(34):31270-31282. doi: 10.1021/acsami.9b07664. Epub 2019 Aug 14.

DOI:10.1021/acsami.9b07664
PMID:31348641
Abstract

Typical aggregation-induced emission (AIE) luminogens tetraphenylethylene (TPE) and triphenylamine have been used to construct an AIE-active conjugated polymer, namely, poly(,-diphenyl-4-(4-(1,2,2-triphenylvinyl)styryl)aniline) (PTPA), which consist of D-π-A architecture by Wittig polymerization. We fabricated mesoporous silica hollow nanospheres (MSHNs) which were encapsulated with the AIE-active polymer for applications in cellular imaging. It exhibits a positive solvatochromism effect by increasing solvent polarity, supported by theoretical calculation using density functional theory. The structure of the monomers and polymer was confirmed by Fourier transform infrared, nuclear magnetic resonance, and high-resolution mass spectrometry techniques. Considering the advantage of high brightness in the fluorescence of PTPA, it was encapsulated into MSHNs by a noncovalent approach, and the surface was functionalized with an anti-EpCAM (antiepithelial cell adhesion molecule) aptamer through conjugation with γ-glycidoxypropyltrimethoxysilane for targeting cancer cells specifically. The aptamer-functionalized Apt-MSHNs exhibited excellent biocompatibility with the liver cancer-Huh-7 cells used for this study and was efficiently internalized by these cells. Because EpCAM are overexpressed in multiple carcinomas, including liver cancer, these aptamer-conjugated AIE MSHNs are therefore good candidates for targeted cellular imaging applications.

摘要

典型的聚集诱导发光(AIE)发光体四苯基乙烯(TPE)和三苯胺被用于构建一种 AIE 活性共轭聚合物,即聚(,-二苯基-4-(4-(1,2,2-三苯基乙烯基)苯乙烯基)苯胺)(PTPA),通过Wittig 聚合形成 D-π-A 结构。我们制备了介孔硅空心纳米球(MSHNs),并用 AIE 活性聚合物封装,用于细胞成像应用。它通过增加溶剂极性表现出正的溶剂变色效应,这得到了密度泛函理论理论计算的支持。单体和聚合物的结构通过傅里叶变换红外、核磁共振和高分辨率质谱技术得到证实。考虑到 PTPA 荧光的高亮度优势,它通过非共价方法封装到 MSHNs 中,并通过与γ-缩水甘油丙基三甲氧基硅烷的共轭反应,用抗上皮细胞黏附分子(EpCAM)适体进行表面功能化,以特异性靶向癌细胞。适体功能化的 Apt-MSHNs 与用于本研究的肝癌-Huh-7 细胞具有出色的生物相容性,并被这些细胞有效内化。由于 EpCAM 在多种癌症中过度表达,包括肝癌,因此这些适体偶联的 AIE MSHNs 是用于靶向细胞成像应用的良好候选物。

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